Iadecola C, Kraig R P
Department of Neurology and Pharmacological, University of Chicago, IL 60637.
Brain Res. 1991 Nov 1;563(1-2):273-7. doi: 10.1016/0006-8993(91)91544-b.
We studied whether K+, a potent cerebrovasodilator released by active neurons, participates in the increase in cortical cerebral blood flow (CBF) elicited by stimulation of the cerebellar fastigial nucleus (FN). Rats were anesthetized by continuous administration of halothane (1-3%), paralyzed and artificially ventilated. FN was stimulated electrically (8 s trains, 50 Hz, 5-10 V) through microelectrodes positioned stereotaxically. K+o (mM) was measured in sensory cortex by K(+)-sensitive micropipettes. In some experiments neocortical CBF was monitored continuously by laser-doppler flowmetry. Stimulation of the FN produced significant increases in K+o that averaged 0.91 +/- 0.16 mM (range 0.5-2.9 mM; n = 19) and were confined to sites corresponding to the intermediate cortical laminae (P less than 0.05, ANOVA). To determine whether such K+o elevations were able to produce increases in CBF comparable to those elicited by FN stimulation, cortical K+o was increased by superfusing the sensory cortex with 20-30 mM K+ in Ringer. K+o elevations of 2.8 +/- 0.6 mM increased CBF by 17 +/- 2% (n = 5), an increase considerably smaller than that elicited by FN stimulation in cerebral cortex. We conclude that K+ is unlikely to mediate the cortical cerebrovasodilation. Furthermore, the restricted spatial distribution of the K+o increase indicates that the cortical neural activity evoked by FN stimulation is highly focal. Thus the findings support the hypothesis that, in cortex, the vasodilation is mediated by activation of a restricted group of neural elements, perhaps neurons in laminae III-IV.
我们研究了由活跃神经元释放的强效脑血管扩张剂钾离子(K+)是否参与了刺激小脑顶核(FN)所引发的大脑皮质脑血流量(CBF)增加。通过持续给予氟烷(1 - 3%)对大鼠进行麻醉,使其瘫痪并进行人工通气。通过立体定位放置的微电极对FN进行电刺激(8秒串刺激,50赫兹,5 - 10伏)。用钾离子敏感微吸管测量感觉皮质中的细胞外钾离子浓度(K+o,毫摩尔)。在一些实验中,通过激光多普勒血流仪连续监测新皮质的CBF。刺激FN导致K+o显著增加,平均增加0.91±0.16毫摩尔(范围0.5 - 2.9毫摩尔;n = 19),且局限于与皮质中间层相对应的部位(方差分析,P < 0.05)。为了确定这种K+o升高是否能够产生与FN刺激所引发的CBF增加相当的效果,通过在林格氏液中用20 - 30毫摩尔的K+灌注感觉皮质来升高皮质K+o。K+o升高2.8±0.6毫摩尔使CBF增加了17±2%(n = 5),这一增加幅度明显小于FN刺激大脑皮质所引发的增加幅度。我们得出结论,K+不太可能介导皮质脑血管扩张。此外,K+o增加的空间分布受限表明,FN刺激所诱发的皮质神经活动高度集中。因此,这些发现支持了这样一种假说,即在皮质中,血管舒张是由一组受限的神经元件(可能是III - IV层中的神经元)的激活所介导的。